Ndikumana Joel, An Kunsik
Department of Mechatronics Engineering, Konkuk University Glocal Campus, 268 Chungwon-daero, Chungju-si 27478, Republic of Korea.
Nanoscale. 2024 Aug 15;16(32):15319-15329. doi: 10.1039/d4nr01301h.
Organic Light Emitting Diodes (OLEDs) have emerged as popular screen advancements in digital appliances, thanks to their unique characteristics such as self-emitting ability, transparency, true dark tone, and flexibility. In comparison to liquid crystal displays, OLED displays offer superior performance. Moreover, OLEDs are also a promising option for illuminating purposes. Although significant progress in enhancing the internal quantum efficiency (IQE) of OLEDs, achieving an external quantum efficiency that matches their full potential has proven challenging due to optical losses. This paper explores the utilization of Randomly Disassembled Nanostructures (RaDiNa) for light extraction in flexible OLEDs. The study confirms that the implementation of RaDiNa enhances light extraction efficiency, particularly at angles above the critical angle, leading to an increased external quantum efficiency (EQE). The application of a cured polydimethylsiloxane (PDMS) onto the substrate resulted in the RaDiNa-structured OLEDs demonstrating not only an extended viewing angle but also stable light emission across all angles, reinforcing the technology's value for high-quality display applications. These findings underscore RaDiNa's potential for significantly improving the efficiency of flexible OLEDs without altering the light emission spectrum based on the viewing angle.
有机发光二极管(OLED)凭借其自发光能力、透明度、真黑色调及柔韧性等独特特性,已成为数字电器领域广受欢迎的屏幕技术进步成果。与液晶显示器相比,OLED显示器性能更优。此外,OLED也是用于照明目的的一个有前景的选择。尽管在提高OLED的内部量子效率(IQE)方面取得了重大进展,但由于光学损耗,要实现与其全部潜力相匹配的外部量子效率仍颇具挑战。本文探讨了随机拆解纳米结构(RaDiNa)在柔性OLED光提取中的应用。研究证实,采用RaDiNa可提高光提取效率,尤其是在临界角以上的角度,从而提高外部量子效率(EQE)。在基板上涂覆固化聚二甲基硅氧烷(PDMS)后,具有RaDiNa结构的OLED不仅视角得到扩展,而且在所有角度的发光都很稳定,这凸显了该技术在高质量显示应用中的价值。这些发现强调了RaDiNa在不基于视角改变发光光谱的情况下,显著提高柔性OLED效率的潜力。